4.5 Article

Sorcin ablation plus β-adrenergic stimulation generate an arrhythmogenic substrate in mouse ventricular myocytes

Journal

JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY
Volume 114, Issue -, Pages 199-210

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.yjmcc.2017.11.017

Keywords

Sorcin; Ryanodine receptors; Sodium-calcium exchanger; L-type Ca2+ channel; Ventricular myocytes; Cardiac ventricular arrhythmias

Funding

  1. National Institutes of Health [R01-HL055438, R01-HL120108, R01-HL134344]
  2. French National Research Agency [ANR-13-BSV1-0023-01]

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Sorcin, a penta-EF hand Ca2+-binding protein expressed in cardiomyocytes, is known to interact with ryanodine receptors and other Ca2+ regulatory proteins. To investigate sorcin's influence on cardiac excitation-contraction coupling and its role in the development of cardiac malfunctions, we generated a sorcin knockout (KO) mouse model. Sorcin KO mice presented ventricular arrhythmia and sudden death when challenged by acute stress induced by isoproterenol plus caffeine. Chronic stress, which was induced by transverse aortic constriction, significantly decreased the survival rate of sorcin KO mice. Under isoproterenol stimulation, spontaneous Ca2+ release events were frequently observed in sorcin KO cardiomyocytes. Sorcin KO hearts of adult, but not young mice developed overexpression of L-type Ca2+ channel and Na+-Ca2+ exchanger, which enhanced I-Ca and I-NCX. Consequently, spontaneous Ca2+ release events in sorcin KO cardiomyocytes were more likely to induce arrhythmogenic delayed afterdepolarizations. Our study demonstrates sorcin deficiency may trigger cardiac ventricular arrhythmias due to Ca2+ disturbances, and evidences the critical role of sorcin in maintaining Ca2+ homeostasis, especially during the adrenergic response of the heart.

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